ABB HIEE305082R1 – UNS0863A-P V1 Digital I/O Card: Industrial Automation Solutions for Enhanced Efficiency
Engineered for industrial automation, this Digital I/O card from ABB seamlessly integrates into PLC systems, offering unparalleled scalability and cost-effectiveness for versatile applications.
Detailed content
Product Type:Digital I/O Card
Manufacturer:ABB
Model Number:UNSO863A-P V1
Dimensions (D x H x W):480 x 82 x 180 mm
Weight:0.66 kg
Operating Voltage:3 V
I/O Channels:32 channels
Communication Protocol:MODBUS RTU
Temperature Range:-20°C to +55°C
Humidity Range:5% to 95% non-condensing
Connection Type:M12 connector
Certifications:[“CE”,”UL”,”CSA”]
The ABB HIEE305082R1 UNS0863A-P V1 Digital I/O Card is engineered to enhance the efficiency and reliability of industrial automation systems. With its robust design and high-quality materials, it ensures stable operation under demanding conditions.
Featuring advanced signal processing capabilities, this card delivers precise control signals to actuators and receives status information from sensors, making it ideal for applications requiring high-speed data transfer and processing.
Built with a modular architecture, it facilitates easy installation and maintenance, allowing for quick integration into existing control systems without disrupting ongoing operations. The card supports multiple communication protocols, including Modbus RTU, ensuring compatibility with a broad spectrum of automation software.
Designed for industrial environments, the ABB HIEE305082R1 UNS0863A-P V1 Digital I/O Card is equipped to withstand harsh conditions, including wide temperature ranges and varying humidity levels, ensuring continuous performance throughout the year.
With its compact size and versatile connectivity options, this card is an essential component for modern industrial control systems, enabling seamless integration with PLCs, HMIs, and other automation devices. It supports efficient data acquisition, processing, and dissemination, driving productivity and cost-effectiveness in manufacturing processes.